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Schlumberger Waterloo Hydrogeologic Visual MODFLOW Flex v6.1 Software
 
Schlumberger Waterloo Hydrogeologic Visual MODFLOW Flex v6.1 x64

Schlumberger Waterloo Hydrogeologic Visual MODFLOW Flex v6.1

Visual MODFLOW Flex is the industry standard software for 3D groundwater flow, heat and contaminant transport modeling.

  • Integrated Conceptual and Numerical Groundwater Modeling.
  • Powerful 2D and 3D Visualization Capabilities.Intuitive and Easy-to-Use.
Более побдробно тут
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Property Modeling Course Bookware
 
Schlumberger Petrel 2010 Property Modeling Course

Property Modeling Course

The purpose of this course is to provide an understanding of how to perform Facies and Petrophysical modeling in Petrel. The target is to use all geological information available to build a realistic property model. Property modeling is the process of filling the grid cells with discrete or continuous properties.


In order to construct a proper model based on a 3D grid, it is important to understand the basic concepts, algorithms and methods leading to these results. Therefore, the first part of the course will focus on basic geostatistical concepts like variograms, kriging and simulation, and will also test out different methods to see both the benefits and the limitations.

Property modeling in Petrel is split into three separate processes: Geometrical, Facies and Petrophysical modeling. In addition, there are other process steps which can be used when modeling properties: Scale up well logs, Data analysis, Train Estimation Model (Neural Net), Trend modeling, User-defined object creation, Training image and patern creation and Fault Analysis (the last four processes will not be covered in this course).

By attending this course, you will obtain an introduction to the geostatistical and Property modeling functionalities in Petrel. Upon completion of the course, you will have been introduced to enough options in Petrel to be able to build a property model on your own. Due to the scope of the software, there is a wide range of functionalities in Petrel that will not be introduced in this course. Refer to our other courses for more details on separate modules.
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Schlumberger Petrel 12 Weeks Course Bookware
 
Schlumberger Petrel 12 Weeks Course

Schlumberger Petrel 12 Weeks Course

In this project, a 3D geological (static) model of a sample petroleum reservoir will be built. All steps will be shown in detail with screen shots of the necessary figures. The software to be used is Petrel, which is a product of Schlumberger, used to build 3D geological models of petroleum reservoirs. The project is divided in chapters as indicated in the Petrel Workflow Tools. After some modifications and enhancements to the Petrel Workflow, the chapters will be presented as follows:

  1. Introduction
  2. Data Import
  3. Input Data Editing
  4. Well Correlation
  5. Fault Modeling
  6. Pillar Gridding
  7. Vertical Layering
  8. Geometrical Property Modeling
  9. Upscaling in the Vertical Direction-Well Logs Upscaling
  10. Facies Modeling
  11. Petrophysical Modeling
  12. Defining Fluid Contacts
  13. Volume Calculation
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SLB 1980, Wireline Logs for Drilling Personnel Bookware
 
Schlumberger, 1980 - Wireline Logs for Drilling Personnel

SLB 1980, Wireline Logs for Drilling Personnel

Another fantastic book form old school geologist. The book is Wireline logging basics by SLB, 1980. Absolutely great one for understanding of the logging procedures and principles.
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SLB Services Catalog & The Rxo Log Bookware
 
SLB Services Catalog & The Rxo Log

SLB Services Catalog & The Rxo Log

For old school geologist.

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Schlumberger PIPESIM 2017.2.1071 Software
 
Schlumberger PIPESIM 2017.2.1071 x64
with the new extended license

Schlumberger PIPESIM 2017.2.1071

Schlumberger PIPESIM обеспечивает моделирование установившегося многофазного потока для нефтегазодобывающих систем. Отдельные модули Schlumberger PIPESIM используются для большого числа аналитических исследований, таких как: моделирование скважины, оптимизация механизированной добычи, моделирование трубопроводов и технологического оборудования, планирование разработки месторождения. Schlumberger PIPESIM - набор модулей моделирования с применением передовых средств для разработки, проектирования и эксплуатации скважин, трубопроводов, промысловых объектов и сетей. Модули интегрированы таким образом, чтобы можно было построить полную модель системы добычи, начиная с месторождения и заканчивая центральным пунктом сбора, со специальными модулями по оптимизации работ в масштабе всего месторождения и по планированию разработки месторождения. Schlumberger PIPESIM является частью решения по интегрированному моделированию месторождений Avocet Integrated Asset Modeler (Avocet IAM), позволяющего интегрировать модели залежи, скважин и промыслового оборудования, систему сбора, подготовки, переработки и финансово-экономическую модель в единую систему управления добывающим активом.


Основные спецификации:
  • моделирование многофазного стационарного течения;
  • быстрые концептуальные исследования;
  • расчет трубопроводов и технологического оборудования;
  • расчет необходимого диаметра трубопровода;
  • исследования чувствительности модели и ее оптимизация;
  • обеспечение потока из высокоточных термогидравлических моделей;
  • анализ режима потока, условий появления гидродинамических пробок и последствий очистки скребком;
  • расчет размеров оборудования;
  • расчет характеристик изоляции;
  • расчет моделей скважин, включенных в эту же модель.
Модели оборудования:
  • сепараторы;
  • мультифазные насосы;
  • компрессоры и детандеры;
  • нагревающие и охлаждающие устройства;
  • штуцеры.
Преимущества программного комплекса PIPESIM:
  • моделирование сетей сбора различных флюидов, систем нагнетания, магистральных трубопроводов;
  • моделирование скважин и расчет потерь давления и температуры по скважине;
  • моделирование и расчет различных видов смесей, в том числе вязких и высоковязких нефтей;
  • широкие возможности по автоматизации, используя технологию Open Link.
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Schlumberger Petrel 2016.3 Software
 
Schlumberger Petrel 2016.3

Schlumberger Petrel 2016.3

Petrel is an integrated software solution that enables you to solve all your subsurface challenges - from seismic interpretation through reservoir simulation. Petrel eliminates the communication problems that exist between different software packages and associated technical disciplines. All work processes in Petrel contribute to developing and refining the same volumetric earth model, static to dynamic. The common environment and workflow automatically captures your knowledge as your work progresses. This eliminates the information mismatch or information loss that is common when using individual applications. Now you can easily integrate new data, rapidly updating earth models and lowering your overall E&P risk. 


Benefits
- All tools from seismic interpretation to simulation are integrated in one application, eliminating import and export problems and promoting collaboration.
- Strong visualization capabilities give you instant QC of all data in 3D.
- Models can be updated instantly when new data arrives to make quicker and more reliable decisions. 
- All results can be copy-pasted to any Windows application making it quick and easy to report and present your latest results. 
- Petrel has a familiar Windows user interface, undo/redo functionality, and stores modeling history, making it easy to use and learn.
- Petrel Modules.
- Geophysics.
- Geology.
- Reservoir Engineering
- Well Engineering.
- Data and Results Viewer.

More info
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Schlumberger Symmetry 2018 build 252 Software
 
Schlumberger Symmetry 2018 build 252

Schlumberger Symmetry 2018 build 252

Symmetry, a process software platform, is a comprehensive simulator that captures all aspects of your models from reservoir to product distribution. The Symmetry platform is built using VMG’s industry proven simulation technologies that have been optimized to scale to your engineering needs. The Symmetry platform uniquely integrates the modeling of fields, pipe networks, process plants and flare systems, providing an unprecedented level of collaboration. The Symmetry platform is designed with flexibility in mind. It can be used to model a specific application or to create a comprehensive model that may span from the field through different types of facilities. Everything using a consistent thermodynamic engine. If you are a VMGSim user you will feel right at home since the Symmetry platform builds upon familiar workflows and a powerful core of process simulation technology that comes from VMGSim.


Each flowsheet in a simulation model can be solved in steady state or dynamics, and different types of flowsheets provide tailored workspaces for models of processing facilities, pipe networks or flare systems. The steady state solver in the pipe and flare workspaces provides a unique combination of a pressure flow network solver and a sequential solver depending on the specifications. The Symmetry platform’s tailored workspaces include: VMGSim (World-class process simulation for facilities and plants); Pipe (Rigorous dynamic and steady-state multiphase modeling for complex pipe networks); Flare (All-inclusive relief system analysis with integrated PSV, network header and stack design); Field (Fully integrated gas reservoir and multiphase gathering system with forecasting functionality).

The VMGSim (Process), Pipe and Flare workspaces share the same proces platform therefore they share the same extensive set of tools including regression, an optimizer, economics, connectivity and fluid characterization. The thermodynamic engine is consistent across the entire simulator and becomes a critical component of an integrated simulation model. Workspaces are tailored with specific features and views to promote common workflows and increase productivity. The flexible design of the Symmetry platform enables users to create simulations for a wide variety of applications and uses, from conceptual design to optimization and debottlenecking. The versatility of the Symmetry platform makes it the perfect tool for desktop work or for Industry 4.0 implementations.

More info: 1, 2.
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Schlumberger Waterloo Hydrogeologic Visual MODFLOW Flex v5.1 Software
 
Schlumberger Waterloo Hydrogeologic Visual MODFLOW Flex v5.1 x64

Schlumberger Waterloo Hydrogeologic Visual MODFLOW Flex v5.1

Visual MODFLOW Flex is the industry standard software for 3D groundwater flow, heat and contaminant transport modeling.

  • Integrated Conceptual and Numerical Groundwater Modeling.
  • Powerful 2D and 3D Visualization Capabilities.
  • Intuitive and Easy-to-Use.
More info
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Schlumberger VMGSim v10.0 build 04.2018 Software
 
Schlumberger Virtual Materials Group VMGSim v10.0 build 04.2018

Schlumberger VMGSim v10.0 build 04.2018

VMGSim is used around the world to model existing processes and to design new facilities from the ground up. With over 20,000 chemicals, more than 80 thermodynamic property packages and hundreds of unit operations, VMGSim provides unparalleled model sophistication and precision, giving you more time to solve processing challenges creatively. As a result, you'll find innovative ways to increase the value of your product while reducing your operating costs and wasted material. Let VMGSim be like your own engineering advisor: propagating information, anticipating your questions, and suggesting effective methods for model development and exploration. Better still, it builds your models based on rigorous thermodynamic relationships and needs only the information absolutely required to do so, saving you time and processing power.


Experiment with different equipment configurations in your simulation models to see the effects of changes to the whole system instantly and economically. VMGSim does this by instantly calculating process changes, intelligently propagating information, and continually monitoring degrees of freedom when you modify any unit operation parameters or process conditions.


Model your plants using a relatively small number of inputs because VMGSim can extract only the most useful information from your data. That information is then spread throughout your flowsheet automatically, allowing you to develop creative solutions to extremely difficult problems you may not be able to easily solve using traditional sequential simulators. VMGSim tracks all of your data inputs, making it possible to immediately see what was added to the system and the result. The bi-directional information propagation capability also eliminates the need for artificial recycle blocks and simultaneous convergence of recycles and controllers throughout your flowsheet.


VMGSim is a true Gibbs-based simulator that is capable of monitoring each variable’s state and its thermodynamic significance. By means of the Gibbs phase rule, with enough degrees of freedom fulfilled, calculations are automatically completed and the results transmitted throughout your flowsheet. Simulations are automatically recalculated every time you change the value of a variable without the need for special estimates. You can now concentrate on understanding your process while VMGSim handles the math.

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